All Rights Reserved. No part of this document may be copied or reproduced in any form without the prior written permission of Micrel, Inc. Micrel Inc. may update or make changes
to the contents, products, programs or services described at any time without notice. This document neither states nor implies any kind of warranty, including, but not limited to
implied warranties of merchantability or fitness for a particular use.
Page 1 |
MK-Q-B-P-D-110410-01-2
Programmable Low-Jitter Precision CMOS Oscillator
DSC8112
1
Absolute Maximum Ratings
Ordering Code
Item
Supply Voltage
Input Voltage
Junction Temp
Storage Temp
Soldering Temp
ESD
HBM
MM
CDM
DSC8101
Min
-0.3
-0.3
-
-55
-
-
Max
+4.0
V
DD
+0.3
+150
+150
+260
4000
400
1500
Unit
V
V
°C
°C
°C
V
Condition
Enable Modes
0: Enable/Standby
2: Enable/Disable
Temp Range
E: -20 to 70
I: -40 to 85
L: -40 to 105
M: -55 to 125
Packing
T: Tape & Reel
: Tube
40sec max.
DSC81
0
1
C I 5
Package
A: 7.0x5.0mm
B: 5.0x3.2mm
C: 3.2x2.5mm
D: 2.5x2.0mm
-
Stability
1: ±50ppm
2: ±25ppm
5: ±10ppm
T
Note: 1000+ years of data retention on internal memory
Specifications
Parameter
Supply Voltage
1
Supply Current
Frequency Stability
Ext Comm. & Ind. only
All temp ranges
All temp ranges
Aging
Startup Time
2
Input Logic Levels
Input logic high
Input logic low
Output Disable Time
3
Output Enable Time
Enable Pull-Up Resistor
4
V
DD
I
DD
EN pin low – output is disabled
DSC8101
DSC8121
Includes frequency variations due
to initial tolerance, temp. and
power supply voltage
1 year @25°C
T=25°C
0.75xV
DD
-
DSC8101
DSC8121
Pull-up resistor exist
40
Condition
Min.
2.25
Typ.
Max.
3.6
0.095
22
±10
±25
±50
±5
5
-
0.25xV
DD
5
5
20
Unit
V
mA
20
Δf
Δf
t
SU
V
IH
V
IL
t
DA
t
EN
ppm
ppm
ms
V
ns
ms
ns
kΩ
CMOS Output
Supply Current
4
Output Logic Levels
Output logic high
Output logic low
Output Transition time
3
Rise Time
Fall Time
Frequency
Output Duty Cycle
Period Jitter
Integrated Phase Noise
1.
2.
3.
4.
I
DD
V
OH
V
OL
t
R
t
F
f
0
SYM
J
PER
J
PH
output is enabled
C
L
=15pF, F
0
=125 MHz
I=±6mA
20% to 80%
C
L
=15pF
All temp range except Auto
Auto temp range
Fout=125MHz
200kHz to 20MHz @ 125MHz
100kHz to 20MHz @ 125MHz
12kHz to 20MHz @ 125MHz
10
45
0.9xV
DD
-
31
35
-
0.1xV
DD
mA
V
1.1
1.3
2
2
170
100
55
ns
MHz
%
ps
RMS
ps
RMS
3
0.3
0.38
1.7
2
Pin 6 V
DD
should be filtered with 0.1uf capacitor.
t
su
is time to 100PPM of output frequency after V
DD
is applied and outputs are enabled.
Output Waveform and Test Circuit figures below define the parameters.
Output is enabled if pad is floated or not connected.
All Rights Reserved. No part of this document may be copied or reproduced in any form without the prior written permission of Micrel, Inc. Micrel Inc. may update or make changes
to the contents, products, programs or services described at any time without notice. This document neither states nor implies any kind of warranty, including, but not limited to
implied warranties of merchantability or fitness for a particular use.
Page 2 |
MK-Q-B-P-D-110410-01-2
Programmable Low-Jitter Precision CMOS Oscillator
DSC8112
1
Nominal Performance Parameters
(Unless specified otherwise: T=25° C, V
DD
=3.3 V)
2.5
DSC8101
0
25MHz-CMOS
Phase Jitter (ps RMS)
2.0
-10
50-mV
100-mV
50MHz-CMOS
106MHz-CMOS
Rejection (dBc)
1000
-20
-30
-40
-50
-60
-70
1.5
125MHz-CMOS
1.0
0.5
0.0
-80
0
200
400
600
800
0.1
1
10
100
1000
10000
Low-end of integration BW: x kHz to 20 MHz
Supply Noise Frequency (kHz)
Phase jitter (integrated phase noise)
Power supply rejection ratio
Output Waveform
t
R
V
OH
t
F
Output
V
OL
1/f
o
t
DA
V
IH
t
EN
Enable
V
IL
Typical Termination Scheme
V
DD
0.1uF
6
2
3
5
4
Rs
50 Ω
Rs = 0 Ω f or test
Rs serves to match the trace
impedances. Depending on
board layout, the value may
range from 0 to 30 ohms.
C
L
CMOS load
capacitance
All Rights Reserved. No part of this document may be copied or reproduced in any form without the prior written permission of Micrel, Inc. Micrel Inc. may update or make changes
to the contents, products, programs or services described at any time without notice. This document neither states nor implies any kind of warranty, including, but not limited to
implied warranties of merchantability or fitness for a particular use.
Page 3 |
MK-Q-B-P-D-110410-01-2
DSC8101
Test Circuit
DSC8112
1
Programmable Low-Jitter Precision CMOS Oscillator
I
DD
4
6
5
2
3
4
V
DD
0.1uF
1
1
2
3
15pF
V
DA
Board Layout (recommended)
Solder Reflow Profile
ax
260
°
C
Temperature (°C)
Se
cM
.
20-40
Sec
217
°
C
200
°
C
ax
.
60-150
Sec
150
°
C
3C
/Se
60-180
Sec
cM
Reflow
Pre heat
8 min max
Cool
Time
25
°
C
MSL 1 @ 260°C refer to JSTD-020C
Ramp-Up Rate (200°C to Peak Temp) 3°C/Sec Max.
Preheat Time 150°C to 200°C
60-180 Sec
Time maintained above 217°C
60-150 Sec
255-260°C
Peak Temperature
Time within 5°C of actual Peak
20-40 Sec
6°C/Sec Max.
Ramp-Down Rate
Time 25°C to Peak Temperature
8 min Max.
3C
/
All Rights Reserved. No part of this document may be copied or reproduced in any form without the prior written permission of Micrel, Inc. Micrel Inc. may update or make changes
to the contents, products, programs or services described at any time without notice. This document neither states nor implies any kind of warranty, including, but not limited to
implied warranties of merchantability or fitness for a particular use.
Page 4 |
MK-Q-B-P-D-110410-01-2
S
S
S
6C
6C
6C/
M
cM
cM
ec
a.
a.
a x.
DSC8112
1
Package Dimensions
DSC8101
Programmable Low-Jitter Precision CMOS Oscillator
7.0 x 5.0 mm Plastic Package
5.0 x 3.2 mm Plastic Package
All Rights Reserved. No part of this document may be copied or reproduced in any form without the prior written permission of Micrel, Inc. Micrel Inc. may update or make changes
to the contents, products, programs or services described at any time without notice. This document neither states nor implies any kind of warranty, including, but not limited to
implied warranties of merchantability or fitness for a particular use.
【Nanjing University of Science and Technology Works】From a macro-environmental analysis, the girls at the University of Science and Technology have long been contracted to households. Every year when ...
[i=s]This post was last edited by jennyzhaojie on 2017-10-20 10:57[/i] [align=left]Mini MP3 Player is a compact MP3 player module that can play sound directly through the speaker. The module perfectly...
There are many power management techniques available and many new ones are being actively researched. Unfortunately, the most effective techniques often conflict with operating system and application ...
[i=s]This post was last edited by paulhyde on 2014-9-15 03:26[/i]The freewheeling circuit analysis of L298N just can't come out
Also, when the freewheeling diode works in the freewheeling state, is it...
PCB Design Methods and Techniques (I) (Hint: If the picture is not complete, please save it and look at it later.) 1. How to choose PCB material? The selection of PCB material must strike a balance be...
International Solar Photovoltaic Network News: Chinese inverter company Sungrow announced that it will build a 3GW photovoltaic inverter manufacturing plant in Bangalore, the capital of Karnataka, ...[Details]
After searching a lot of information, I finally understood the time base timer. I did not use any library functions but operated the registers directly. The following introduces the systick in STM32...[Details]
As many companies listed with
the concept of
touch screen
begin to "transform and upgrade", the official voice of the TP industry is getting smaller and smaller. At the same time, the list o...[Details]
The implementation of CAN driver under embedded operating system Android requires not only adding CAN driver device in Linux kernel, but also implementing the call of Android HAL layer. Taking S5...[Details]
The storage media corresponding to the three boot modes of STM32 are built-in to the chip, they are: 1. User Flash = Flash built into the chip 2.SRAM = RAM area built into the chip, which is the m...[Details]
ADC: 1. The ADC module inside STM32 has three ADC1, ADC2, and ADC3, which are independent of each other, so synchronous sampling can be performed. 2ADC input clock must not exceed 14MHz, it is genera...[Details]
When the program starts running, light A turns on for 5 seconds, then turns off, light B turns on for 5 seconds, light B turns off, light C turns on for 5 seconds, light C turns off, the program ends...[Details]
For complex calculations, the speed of the microcontroller is too slow. The best way is to manually calculate all the results in advance, store them in ROM in sequence, and then directly check the re...[Details]
Using AT89S51 microcontroller, modify the original one to turn the LED on for 4s and off for 2s. Thank you. Use a timer. (The program is written in the answer, omitted here - just a note) The origi...[Details]
(1) JTAG is a communication standard used for real-time and fast communication between computers and microcontrollers. The JTAG function of AVR (only available on some models) makes AVR debugging ver...[Details]